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Reliability and sensitivity analysis of a system with multiple unreliable service stations and standby switching failures

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  • Ke, Jyh-Bin
  • Lee, Wen-Chiung
  • Wang, Kuo-Hsiung

Abstract

This paper presents the reliability and sensitivity analysis of a system with M primary units, W warm standby units, and R unreliable service stations where warm standby units switching to the primary state might fail. Failure times of primary and warm standby units are assumed to have exponential distributions, and service times of the failed units are exponentially distributed. In addition, breakdown times and repair times of the service stations also follow exponential distributions. Expressions for system reliability,RY(t), and mean time to system failure, MTTF are derived. Sensitivity analysis, relative sensitivity analysis of the system reliability and the mean time to failure, with respect to system parameters are also investigated.

Suggested Citation

  • Ke, Jyh-Bin & Lee, Wen-Chiung & Wang, Kuo-Hsiung, 2007. "Reliability and sensitivity analysis of a system with multiple unreliable service stations and standby switching failures," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 380(C), pages 455-469.
  • Handle: RePEc:eee:phsmap:v:380:y:2007:i:c:p:455-469
    DOI: 10.1016/j.physa.2007.02.095
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    Citations

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    Cited by:

    1. Liu, Yiming & Shi, Yimin & Bai, Xuchao & Zhan, Pei, 2018. "Reliability estimation of a N-M-cold-standby redundancy system in a multicomponent stress–strength model with generalized half-logistic distribution," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 490(C), pages 231-249.
    2. Chen, Wu-Lin & Wang, Kuo-Hsiung, 2018. "Reliability analysis of a retrial machine repair problem with warm standbys and a single server with N-policy," Reliability Engineering and System Safety, Elsevier, vol. 180(C), pages 476-486.
    3. Yang, Dong-Yuh & Wu, Chia-Huang, 2021. "Evaluation of the availability and reliability of a standby repairable system incorporating imperfect switchovers and working breakdowns," Reliability Engineering and System Safety, Elsevier, vol. 207(C).

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